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A Novel Recombinant FAdV-4 Virus with Fiber of FAdV-8b Provides Efficient Protection against Both FAdV-4 and FAdV-8b

Since 2015, the outbreaks of hydropericardium-hepatitis syndrome (HHS) and inclusion body hepatitis (IBH) caused by the highly pathogenic serotype 4 fowl adenovirus (FAdV-4) and serotype 8 fowl adenovirus (FAdV-8), respectively, have caused huge economic losses to the poultry industry. Although seve...

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Detalles Bibliográficos
Autores principales: Lu, Hao, Xie, Quan, Zhang, Wei, Zhang, Jianjun, Wang, Weikang, Lian, Mingjun, Zhao, Zhehong, Ren, Dan, Xie, Songhua, Lin, Yun, Li, Tuofan, Mu, Yaru, Wan, Zhimin, Shao, Hongxia, Qin, Aijian, Ye, Jianqiang
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8878265/
https://www.ncbi.nlm.nih.gov/pubmed/35215968
http://dx.doi.org/10.3390/v14020376
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author Lu, Hao
Xie, Quan
Zhang, Wei
Zhang, Jianjun
Wang, Weikang
Lian, Mingjun
Zhao, Zhehong
Ren, Dan
Xie, Songhua
Lin, Yun
Li, Tuofan
Mu, Yaru
Wan, Zhimin
Shao, Hongxia
Qin, Aijian
Ye, Jianqiang
author_facet Lu, Hao
Xie, Quan
Zhang, Wei
Zhang, Jianjun
Wang, Weikang
Lian, Mingjun
Zhao, Zhehong
Ren, Dan
Xie, Songhua
Lin, Yun
Li, Tuofan
Mu, Yaru
Wan, Zhimin
Shao, Hongxia
Qin, Aijian
Ye, Jianqiang
author_sort Lu, Hao
collection PubMed
description Since 2015, the outbreaks of hydropericardium-hepatitis syndrome (HHS) and inclusion body hepatitis (IBH) caused by the highly pathogenic serotype 4 fowl adenovirus (FAdV-4) and serotype 8 fowl adenovirus (FAdV-8), respectively, have caused huge economic losses to the poultry industry. Although several vaccines have been developed to control HHS or IBH, a recombinant genetic engineering vaccine against both FAdV-4 and FAdV-8 has not been reported. In this study, recombinant FAdV-4 expressing the fiber of FAdV-8b, designated as FA4-F8b, expressing fiber of FAdV-8b was generated by the CRISPR-Cas9 and homologous recombinant techniques. Infection studies in vitro and in vivo revealed that the FA4-F8b replicated efficiently in LMH cells and was also highly pathogenic to 2-week-old SPF chickens. Moreover, the inoculation of inactivated the FA4-F8b in chickens could not only induce highly neutralizing antibodies, but also provide efficient protection against both FAdV-4 and FAdV-8b. All these demonstrate that the inactivated recombinant FA4-F8b generated here can act as a vaccine candidate to control HHS and IBH, and FAdV-4 can be an efficient vaccine vector to deliver foreign antigens.
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spelling pubmed-88782652022-02-26 A Novel Recombinant FAdV-4 Virus with Fiber of FAdV-8b Provides Efficient Protection against Both FAdV-4 and FAdV-8b Lu, Hao Xie, Quan Zhang, Wei Zhang, Jianjun Wang, Weikang Lian, Mingjun Zhao, Zhehong Ren, Dan Xie, Songhua Lin, Yun Li, Tuofan Mu, Yaru Wan, Zhimin Shao, Hongxia Qin, Aijian Ye, Jianqiang Viruses Article Since 2015, the outbreaks of hydropericardium-hepatitis syndrome (HHS) and inclusion body hepatitis (IBH) caused by the highly pathogenic serotype 4 fowl adenovirus (FAdV-4) and serotype 8 fowl adenovirus (FAdV-8), respectively, have caused huge economic losses to the poultry industry. Although several vaccines have been developed to control HHS or IBH, a recombinant genetic engineering vaccine against both FAdV-4 and FAdV-8 has not been reported. In this study, recombinant FAdV-4 expressing the fiber of FAdV-8b, designated as FA4-F8b, expressing fiber of FAdV-8b was generated by the CRISPR-Cas9 and homologous recombinant techniques. Infection studies in vitro and in vivo revealed that the FA4-F8b replicated efficiently in LMH cells and was also highly pathogenic to 2-week-old SPF chickens. Moreover, the inoculation of inactivated the FA4-F8b in chickens could not only induce highly neutralizing antibodies, but also provide efficient protection against both FAdV-4 and FAdV-8b. All these demonstrate that the inactivated recombinant FA4-F8b generated here can act as a vaccine candidate to control HHS and IBH, and FAdV-4 can be an efficient vaccine vector to deliver foreign antigens. MDPI 2022-02-11 /pmc/articles/PMC8878265/ /pubmed/35215968 http://dx.doi.org/10.3390/v14020376 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Lu, Hao
Xie, Quan
Zhang, Wei
Zhang, Jianjun
Wang, Weikang
Lian, Mingjun
Zhao, Zhehong
Ren, Dan
Xie, Songhua
Lin, Yun
Li, Tuofan
Mu, Yaru
Wan, Zhimin
Shao, Hongxia
Qin, Aijian
Ye, Jianqiang
A Novel Recombinant FAdV-4 Virus with Fiber of FAdV-8b Provides Efficient Protection against Both FAdV-4 and FAdV-8b
title A Novel Recombinant FAdV-4 Virus with Fiber of FAdV-8b Provides Efficient Protection against Both FAdV-4 and FAdV-8b
title_full A Novel Recombinant FAdV-4 Virus with Fiber of FAdV-8b Provides Efficient Protection against Both FAdV-4 and FAdV-8b
title_fullStr A Novel Recombinant FAdV-4 Virus with Fiber of FAdV-8b Provides Efficient Protection against Both FAdV-4 and FAdV-8b
title_full_unstemmed A Novel Recombinant FAdV-4 Virus with Fiber of FAdV-8b Provides Efficient Protection against Both FAdV-4 and FAdV-8b
title_short A Novel Recombinant FAdV-4 Virus with Fiber of FAdV-8b Provides Efficient Protection against Both FAdV-4 and FAdV-8b
title_sort novel recombinant fadv-4 virus with fiber of fadv-8b provides efficient protection against both fadv-4 and fadv-8b
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8878265/
https://www.ncbi.nlm.nih.gov/pubmed/35215968
http://dx.doi.org/10.3390/v14020376
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